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US20130328395A1 - Integrated Power Plant and Data Center - Google Patents

Integrated Power Plant and Data Center
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Publication number
US20130328395A1
US20130328395A1US13/909,974US201313909974AUS2013328395A1US 20130328395 A1US20130328395 A1US 20130328395A1US 201313909974 AUS201313909974 AUS 201313909974AUS 2013328395 A1US2013328395 A1US 2013328395A1
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US
United States
Prior art keywords
power
data center
plant
natural gas
chp
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US13/909,974
Inventor
Robert Krizman
Earl Eugene Kern
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
K2IP Holdings LLC
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K2IP Holdings LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by K2IP Holdings LLCfiledCriticalK2IP Holdings LLC
Priority to US13/909,974priorityCriticalpatent/US20130328395A1/en
Publication of US20130328395A1publicationCriticalpatent/US20130328395A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A power plant, in the form of a combined heat and power (CHP) plant, may be co-located with a data center to provide redundant electrical power. The CHP plant and the data center may operate as an island, separate from the local electrical-utility grid. The CHP plant may have a redundant fuel source connection to reduce unavailability of fuel for the CHP and increase the uptime of the data center. The CHP plant may include turbines and engines to manage variable loads within the data center. The power plant may include multiple distributions busses in high-availability configurations to provide highly-reliable and high-quality electricity to the data center. The positioning of these elements in the power plant design provides economies of scale and eliminates single points of failure commonly found in data center configurations, increasing the reliability of the data center.

Description

Claims (20)

What is claimed is:
1. An apparatus, comprising:
a power plant having redundant power sources; and
a data center coupled to the power plant,
in which the data center is co-located with the power plant.
2. The apparatus ofclaim 1, in which the power plant comprises a combined heat and power (CHP) plant.
3. The apparatus ofclaim 2, in which the redundant power sources of the CHP plant comprise a first connection to a first natural gas station and a second connection to a second natural gas station, the first natural gas station and the second natural gas stations being diverse natural gas stations.
4. The apparatus ofclaim 2, in which the redundant power source comprises a plurality of natural gas turbines configured in a redundant arrangement.
5. The apparatus ofclaim 4, in which the redundant power source further comprises a plurality of natural gas engines.
6. The apparatus ofclaim 5, in which the natural gas engines are configured to provide power to the data center when the load of the data center changes rapidly.
7. The apparatus ofclaim 2, in which the data center is configured to receive chilled water from the CHP plant though at least two redundant chilled water connections.
8. The apparatus ofclaim 1, further comprising a connection to a local electrical-utility grid coupled to the power plant, in which the power plant is configured to provide excess-generated power to the local electrical-utility grid.
9. The apparatus ofclaim 1, further comprising a connection to an electric grid coupled to the power plant, in which the power plant is configured to provide excess-generated power to an off-taker not connected to the local electric-utility grid.
10. The apparatus ofclaim 2, further comprising a connection to at least one of a hot water and a steam system coupled to the CHP plant, in which the CHP plant is configured to provide at least one of excess hot water and excess steam to the connection.
11. The apparatus ofclaim 1, in which the data center comprises a plurality of modules, in which each module of the plurality of modules comprises a plurality of pods.
12. The apparatus ofclaim 11, in which each pod of the plurality of pods comprises information technology (IT) equipment, and each pod of the plurality of pods is coupled to a first electrical service bus and a different second electrical service bus of the power plant.
13. The apparatus ofclaim 12, in which the IT equipment comprises at least one of network equipment, storage nodes, and servers.
14. The apparatus ofclaim 1, in which the data center does not include redundant power generation equipment.
15. The apparatus ofclaim 1, in which the data center does not include uninterruptable power supply (UPS) equipment, power distribution units (PDUs), remote power panels (RPPs), or diesel generators.
16. A method, comprising:
receiving a first fuel source;
receiving a second fuel source different from the first fuel source;
generating electrical power from at least one of the first fuel source and the second fuel source in a plant co-located with a data center; and
providing the electrical power to the data center.
17. The method ofclaim 16, in which the first fuel source is natural gas, and the second fuel source is natural gas.
18. The method ofclaim 17, in which the first fuel source is received from a first natural gas station and the second fuel source is received from a second natural gas station different from the first natural gas station.
19. The method ofclaim 16, further comprising generating heat at the plant co-located with the data center.
20. The method ofclaim 19, further comprising providing the heat in the form of steam to the data center co-located with the CHP plant.
US13/909,9742012-06-042013-06-04Integrated Power Plant and Data CenterAbandonedUS20130328395A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US13/909,974US20130328395A1 (en)2012-06-042013-06-04Integrated Power Plant and Data Center

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US201261655205P2012-06-042012-06-04
US13/909,974US20130328395A1 (en)2012-06-042013-06-04Integrated Power Plant and Data Center

Publications (1)

Publication NumberPublication Date
US20130328395A1true US20130328395A1 (en)2013-12-12

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US13/909,974AbandonedUS20130328395A1 (en)2012-06-042013-06-04Integrated Power Plant and Data Center

Country Status (8)

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US (1)US20130328395A1 (en)
EP (1)EP2856600A4 (en)
JP (1)JP2015528266A (en)
CN (1)CN104508932A (en)
AU (1)AU2013271788A1 (en)
IL (1)IL235915A0 (en)
IN (1)IN2015DN00024A (en)
WO (1)WO2013184718A1 (en)

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US11283261B2 (en)2018-10-302022-03-22Lancium LlcManaging queue distribution between critical datacenter and flexible datacenter
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US11611219B2 (en)2018-09-142023-03-21Lancium LlcSystem of critical datacenters and behind-the-meter flexible datacenters
US11669920B2 (en)2020-02-272023-06-06Lancium LlcComputing component arrangement based on ramping capabilities
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US11256320B2 (en)2019-01-112022-02-22Lancium LlcRedundant flexible datacenter workload scheduling
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US11907029B2 (en)2019-05-152024-02-20Upstream Data Inc.Portable blockchain mining system and methods of use
US11961151B2 (en)2019-08-012024-04-16Lancium LlcModifying computing system operations based on cost and power conditions
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US11868106B2 (en)2019-08-012024-01-09Lancium LlcGranular power ramping
US12434586B2 (en)2019-10-082025-10-07Lancium LlcBehind-the-meter branch loads for electrical vehicle charging field
US11594888B2 (en)2019-10-282023-02-28Lancium LlcMethods and systems for adjusting power consumption based on a fixed-duration power option agreement
US12021385B2 (en)2019-10-282024-06-25Lancium LlcMethods and systems for adjusting power consumption based on a fixed-duration power option agreement
US11581734B2 (en)2019-10-282023-02-14Lancium LlcMethods and systems for adjusting power consumption based on a dynamic power option agreement
US12294217B2 (en)2019-10-282025-05-06Lancium LlcMethods and systems for adjusting power consumption based on a fixed-duration power option agreement
US12067633B2 (en)2020-02-272024-08-20Lancium LlcComputing component arrangement based on ramping capabilities
US11669920B2 (en)2020-02-272023-06-06Lancium LlcComputing component arrangement based on ramping capabilities
US12207433B2 (en)2020-03-212025-01-21Upstream Data Inc.Portable blockchain mining system and methods of use
US12099873B2 (en)2020-08-142024-09-24Lancium LlcPower aware scheduling
WO2022218551A1 (en)*2021-04-162022-10-20Forge Process Systems LimitedA dispatchable datacentre energy system and a method of operation
US12149080B1 (en)2023-08-082024-11-19Energy Vault, Inc.Systems and methods for fault tolerant energy management systems configured to manage heterogeneous power plants
US12142916B1 (en)2023-08-082024-11-12Energy Vault, Inc.Systems and methods for fault tolerant energy management systems configured to manage heterogeneous power plants
US12374886B2 (en)2023-08-082025-07-29Energy Vault, Inc.Systems and methods for fault tolerant energy management systems configured to manage heterogeneous power plants
US12132309B1 (en)2023-08-082024-10-29Energy Vault, Inc.Systems and methods for fault tolerant energy management systems configured to manage heterogeneous power plants
US12362563B2 (en)2023-08-252025-07-15Ge Vernova Infrastructure Technology LlcPower plant having a flexible firm skid

Also Published As

Publication numberPublication date
CN104508932A (en)2015-04-08
AU2013271788A1 (en)2015-01-29
EP2856600A1 (en)2015-04-08
IN2015DN00024A (en)2015-05-22
IL235915A0 (en)2015-01-29
WO2013184718A1 (en)2013-12-12
EP2856600A4 (en)2016-07-20
JP2015528266A (en)2015-09-24

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